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达尔文:适用于各种具有宽能量范围辐射的剂量监测系统。

Darwin: dose monitoring system applicable to various radiations with wide energy ranges.

作者信息

Sato T, Satoh D, Endo A, Yamaguchi Y

机构信息

Japan Atomic Energy Agency (JAEA), Shirakata-Shirane 2-4, Tokai-mura, Naka-gun, Ibaraki 319-1195, Japan.

出版信息

Radiat Prot Dosimetry. 2007;126(1-4):501-5. doi: 10.1093/rpd/ncm101. Epub 2007 May 12.

Abstract

A new radiation dose monitor, designated as DARWIN (Dose monitoring system Applicable to various Radiations with Wide energy ranges), has been developed for real-time monitoring of doses in workspaces and surrounding environments of high-energy accelerator facilities. DARWIN is composed of a phoswitch-type scintillation detector, which consists of liquid organic scintillator BC501A coupled with ZnS(Ag) scintillation sheets doped with (6)Li, and a data acquisition system based on a Digital-Storage-Oscilloscope. DARWIN has the following features: (1) capable of monitoring doses from neutrons, photons and muons with energies from thermal energy to 1 GeV, 150 keV to 100 MeV and 1 MeV to 100 GeV, respectively, (2) highly sensitive with precision and (3) easy to operate with a simple graphical user-interface. The performance of DARWIN was examined experimentally in several radiation fields. The results of the experiments indicated the accuracy and wide response range of DARWIN for measuring dose rates from neutrons, photons and muons with wide energies. It was also found from the experiments that DARWIN enables us to monitor small fluctuations of neutron dose rates near the background level because of its high sensitivity. With these properties, DARWIN will be able to play a very important role for improving radiation safety in high-energy accelerator facilities.

摘要

一种新的辐射剂量监测器,命名为DARWIN(适用于宽能量范围各种辐射的剂量监测系统),已被开发用于实时监测高能加速器设施工作区及周边环境中的剂量。DARWIN由一个磷光开关型闪烁探测器组成,该探测器由与掺杂了(6)Li的ZnS(Ag)闪烁片耦合的液体有机闪烁体BC501A构成,以及一个基于数字存储示波器的数据采集系统。DARWIN具有以下特点:(1)能够分别监测能量从热能到1 GeV的中子、150 keV到100 MeV的光子以及1 MeV到100 GeV的μ子的剂量,(2)具有高精度的高灵敏度,(3)通过简单的图形用户界面易于操作。在几个辐射场中对DARWIN的性能进行了实验研究。实验结果表明DARWIN在测量宽能量范围内中子、光子和μ子的剂量率方面具有准确性和宽响应范围。从实验中还发现,由于其高灵敏度,DARWIN能够监测背景水平附近中子剂量率的微小波动。凭借这些特性,DARWIN将能够在提高高能加速器设施的辐射安全方面发挥非常重要的作用。

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